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ČAIROVIĆ, D. ZLÁMAL, M. VENCLOVSKÝ, J. GIRGLE, F. ŠULÁK, P. ŠTĚPÁNEK, P.
Original Title
FRP shear dowels as alternative reinforcement of concrete-to-concrete interface
Type
conference paper
Language
English
Original Abstract
Strength of the interface between two concrete parts cast against at different times is governed by the properties of adhesive bond or amount of the reinforcement crossing the interface. If adequate surface preparation cannot be realized, or adhesion is insufficient, shear dowels were used to ensure monolithic behaviour of the specimen. In order to fully utilize shear reinforcement, it has to be assumed that adhesive bond is lost, and that crack will appear along the interface. Especially in the cases of vertical interfaces, those cracks can be main cause of many durability issues like corrosion of the reinforcement. For that reason, performance of FRP (Fibre Reinforced Polymers) shear dowels was investigated, representing durable alternative to commonly used steel dowels. Experimental investigation, including 4 different amounts of reinforcement and 30 specimens in total is performed. Push-Off test setup was chosen. In this paper, obtained results were presented, together with design approach for FRP dowels, including authors comments and recommendations for practice.
Keywords
FRP, dowel, concrete-to-concrete interface, shear, design
Authors
ČAIROVIĆ, D.; ZLÁMAL, M.; VENCLOVSKÝ, J.; GIRGLE, F.; ŠULÁK, P.; ŠTĚPÁNEK, P.
Released
29. 5. 2019
Publisher
International Federation for Structural Concrete
Location
Krakow
ISBN
978-2-9406-4300-4
Book
fib Symposium 2019: Concrete - Innovations in Materials, Design and Structures
Pages from
1
Pages to
8
Pages count
URL
http://www.fibkrakow2019.pl/
BibTex
@inproceedings{BUT157809, author="Dorde {Čairović} and Martin {Zlámal} and Jakub {Venclovský} and František {Girgle} and Pavel {Šulák} and Petr {Štěpánek}", title="FRP shear dowels as alternative reinforcement of concrete-to-concrete interface", booktitle="fib Symposium 2019: Concrete - Innovations in Materials, Design and Structures", year="2019", pages="1--8", publisher="International Federation for Structural Concrete", address="Krakow", isbn="978-2-9406-4300-4", url="http://www.fibkrakow2019.pl/" }